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Ultra-Heavy Dark Matter Search with Electron Microscopy of Geological Quartz

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arxiv 2105.03998 v2 pith:DD37JRLZ submitted 2021-05-09 hep-ph astro-ph.COhep-ex

classification hep-phastro-ph.COhep-ex
keywords darkmattergeologicalquartzdamagedensityelectronmicroscopy
verification ladder T0 review T1 audit T2 compute T3 formal
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Self-interactions within the dark sector could clump dark matter into heavy composite states with low number density, leading to a highly suppressed event rate in existing direct detection experiments. However, the large interaction cross section between such ultra-heavy dark matter (UHDM) and standard model matter results in a distinctive and compelling signature: long, straight damage tracks as they pass through and scatter with matter. In this work, we propose using geologically old quartz samples as large-exposure detectors for UHDM. We describe a high-resolution readout method based on electron microscopy, characterize the most favorable geological samples for this approach, and study its reach in a simple model of the dark sector. The advantage of this search strategy is two-fold: the age of geological quartz compensates for the low number density of UHDMs, and the distinct geometry of the damage track serves as a high-fidelity background rejection tool.

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Cited by 3 Pith papers

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  1. Reconstructing Dark Matter Mass and Discriminating Standard and Non-Standard WIMP-Nucleus Interactions with Paleo-Detectors

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  2. Searching for heavy charged relics in the Earth

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    Galactic CHAMPs of mass 1–10^{12} TeV can be discovered by mining their accumulation in monitored water/ice and ancient rocks, enriching via gravity or centrifuges, and identifying them with mass spectrometry down to ...

  3. Mineral Detection of Neutrinos and Dark Matter 2025 Proceedings

    physics.ins-det 2025-08 unverdicted novelty 4.0 of 10

    A workshop proceedings presenting 20 status reports on mineral detectors as passive, long-exposure nuclear recoil detectors for dark matter, neutrinos, and cosmic rays.

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